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Parallel MPPT for PV based residential DC Nanogrid

机译:基于光伏的住宅DC纳米电网的并行MPPT

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摘要

Solar Photovoltaic (PV) based DC Nanogrid has simple installation, higher conversion efficiency, low losses, high reliability, remote electrification and safety. In this paper, a parallel maximum power point tracker (MPPT) for residential and commercial DC Nanogrid has been discussed. The proposed MPPT is connected in parallel with PV source & load. It supplies the difference between the load power demand and the maximum PV power generation. The MPPT is realised using a grid-source power converter (GSC) which operates in closed loop fashion. For accurate tracking of maximum power point, PI based incremental conductance (PI-IC) algorithm has been used. To reduce the computational load on digital controller, the ratio metric part of the algorithm has been replaced by the product of the input quantities. The proposed parallel MPPT has been validated by experimental results and given in the paper.
机译:基于太阳能光伏(PV)的DC Nanogrid具有安装简单,转换效率高,损耗低,可靠性高,远程电气化和安全性高的特点。在本文中,已经讨论了用于住宅和商业DC Nanogrid的并行最大功率点跟踪器(MPPT)。建议的MPPT与光伏电源和负载并联连接。它提供了负载功率需求与最大PV发电之间的差异。 MPPT使用以闭环方式运行的电网电源转换器(GSC)实现。为了精确跟踪最大功率点,已使用基于PI的增量电导(PI-IC)算法。为了减少数字控制器上的计算负荷,算法的比率度量部分已由输入量的乘积代替。所提出的并行MPPT已通过实验结果验证并在本文中给出。

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